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Fans for Industrial Extraction and Air Handling Systems

Fans are at the heart of many extraction and air distribution systems. They generate the airflow needed to transport dust, smoke, vapors, or process air from the collection point through ductwork, filters, and other system components. The appropriate design does not depend solely on the maximum flow rate.

In this category, you will find fans for various industrial applications. Depending on the task, options may include, for example, centrifugal fans, material conveying fans, high-temperature fans, or special designs for specific operating conditions. The key factor is the interplay between the required air volume, available pressure, duct resistance, medium, and operating mode.

For a reliable design, the fan should always be considered as part of the overall system. Pipe diameters, elbows, filters, extraction hoods, and other components create pressure losses that must be overcome. Therefore, selecting a fan based solely on motor power or flow rate is not sufficient.

Your Benefits

✅ Fans for various industrial extraction applications

✅ Selection based on flow rate and required pressure

✅ Various designs for different media and processes

✅ Integration into centralized and decentralized extraction systems

✅ Technical design tailored to the overall system

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Fans as the Drive for Industrial Extraction Systems

Fans generate the required airflow to overcome the resistance of ductwork, filters, capture elements, and other system components. To make a reliable selection, the flow rate and available pressure at the actual operating point must be considered together.

Typical fan assemblies

✔ Centrifugal fans for duct and filter systems

✔ Transport fans for air containing particles

✔ High-temperature fans for thermally demanding processes

✔ Roof fans for exhaust air applications

✔ ATEX-compliant versions for appropriately classified areas

✔ Accessories and configuration options

The operating point is decisive

The actual flow rate achieved is determined by the intersection of the fan characteristic curve and the system characteristic curve. A high maximum free-blow value therefore says little about the amount of air available in a real piping and filtration system.

Medium and Operating Conditions

Dust, chips, temperature, humidity, and potentially corrosive or explosive media affect the suitability of the design. Not every fan is suitable for handling air containing particles or extremely hot air.

Here’s what you should look for when making your selection

✔ Required flow rate at the actual operating point

✔ Total pressure drop of the system

✔ Medium, particles, and temperature

✔ Motor Power and Operating Mode

✔ Noise and installation conditions

✔ Connection dimensions and maintenance access

✔ Special safety or ATEX requirements


FAQ

Is specifying the flow rate sufficient for selection?
No. Additionally, it must be known what pressure the fan can provide at this flow rate.

What causes pressure losses?
These include, among other things, pipe lengths, elbows, changes in cross-section, filters, and capture elements.

When is a centrifugal fan a good choice?
When a system must overcome higher resistance caused by piping or filters.

When is frequency control appropriate?
For varying air demand or different operating conditions.

Consulting on Fan Sizing

Desired flow rate, pressure drop, piping network, filters, medium, and operating conditions are the most important design parameters.

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